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Cooperative Non-Orthogonal Multiple Access for Future Wireless Communications

机译:合作非正交多次访问未来无线通信

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摘要

There is a huge demand for increased connectivity and reliability of devices in the fifth generation and beyond of wireless communications so as to ensure massive connectivity and high spectral efficiency. Recently, power domain non-orthogonal multiple access (NOMA) has received considerable attention as a promising multiple access scheme to improve spectrum efficiency. It allows multiple users to share both time and frequency resources by adjusting the power allocation ratio. However, with ever-increasing mobile users and machines in future wireless environments, NOMA still suffers from some challenges such as a limited connectivity, channel uncertainty and a trade-off between throughput and user fairness. Therefore, an opportunity exists for developing NOMA features in a cooperation of such devices. In this paper, we focuses on exploring cooperative power-domain NOMA systems to maximize potential and develops an effective multiple access for next generation wireless systems. To explore the trade-off of the cooperative NOMA system between its performance and the network complexity, several NOMA systems along with various techniques are introduced. Firstly, a joint NOMA and partial relay selection is introduced to improve both system throughput and user fairness. Secondly, a cooperative NOMA scheme which uses a cognitive radio network as an underlay is also introduced. In this work, a cooperative scheme is used to enhance the outage performance at a cell-edge user for user fairness and NOMA aims to improve spectral efficiency. Finally, an opportunistic NOMA under unreliable wireless backhauls and fronthaul channel uncertainty is introduced and two opportunistic selection rules are applied to a joint NOMA scheme and cooperated transmission. In this work,the impact of unreliable wireless backhauls and fronthaul channel uncertainty on the coordinated NOMA system is examined.
机译:对FIT FO代阶段和超出无线通信的设备的连接性和可靠性增加了巨大需求,以确保大规模的连接和高光谱效率。最近,功率域非正交多次访问(NOMA)接受了广泛的关注,以改善频谱E FFI效率的有希望的多种访问方案。它允许多个用户通过调整功率分配比来共享时间和频率资源。然而,随着未来无线环境中不断增加的移动用户和机器,NOMA仍然来自一些挑战,例如有限的连接,信道不确定性和吞吐量和用户公平之间的贸易off。因此,存在在这些设备的协作中开发NOMA特征的机会。在本文中,我们专注于探索协作功率域NOMM系统,以最大限度地发挥潜力,并开发用于下一代无线系统的E FF异步。为了探讨其性能与网络复杂性之间的合作诺马系统的贸易off,介绍了几种NOMA系统以及各种技术。首先,引入了联合NOMA和部分继电器选择以改善系统吞吐量和用户公平性。其次,还介绍了使用认知无线电网络作为界面的协同诺马马。在这项工作中,使用合作方案来增强细胞边缘用户的中断性能,以供用户公平性和NOMA的旨在改善光谱E FFI效率。最后,引入了在不可靠的无线后申和Fronthaul频道不确定性下的机会主义的NOMA,并将两个机会主义选择规则应用于联合NOMA计划和合作传输。在这项工作中,检查了不可靠的无线后申和Fronthaul频道不确定性对协调NOMA系统的影响。

著录项

  • 作者

    Sunyoung Lee;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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